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Analysis of stress intensity factor (SIF) for cracked tubular K-joints subjected to balanced axial load

机译:轴向平衡载荷作用下裂纹K形管接头的应力强度因子(SIF)分析

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摘要

Numerical modelling of cracked tubular K-joint is presented in this study. A new mesh generator for a tubular K-joint with a surface crack was developed and finite element analysis of stress intensity factor (IF) for cracked K-joint was conducted by using the proposed numerical modelling. Numerical results of IF were then verified from experimental tests on a full-scale K-joint specimen. The verifications show that numerical results agree reasonably well with experimental results. Based on the accuracy of numerical analysis, 5120 numerical models of K-joints subjected to balanced axial load were analyzed. IF results of these numerical models were used to build up a database. An interpolation method was introduced to calculate IF of each model in a valid range by using the analyzed IF results in the database. The accuracy of the IF obtained from interpolation method was verified from 972 numerical models which were also analyzed from finite element analysis. The comparisons between SIFs from interpolation method and numerical results show that the introduced interpolation method can provide accurate IF values for cracked tubular K-joints and thus it is both reliable and efficient to be used in design in practice.
机译:这项研究提出了裂纹管状K接头的数值模型。研制了一种新型的具有表面裂纹的管状K型接头网格发生器,并利用所提出的数值模型对裂纹K型接头的应力强度因子(IF)进行了有限元分析。 IF的数值结果随后通过对全尺寸K接头试样进行的实验测试得到了验证。验证表明,数值结果与实验结果相当吻合。基于数值分析的准确性,分析了5120个承受平衡轴向载荷的K型接头的数值模型。如果将这些数值模型的结果用于建立数据库。引入了一种插值方法,通过使用数据库中分析的IF结果在有效范围内计算每个模型的IF。通过972个数值模型验证了通过插值法获得的IF的准确性,并通过有限元分析对其进行了分析。通过对插值方法的SIF和数值结果的比较表明,引入的插值方法可以为破裂的管状K型接头提供准确的IF值,因此在实际设计中既可靠又有效。

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